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Get connected with journalists todayDavid S. Sholl
Verified
Editor-in-Chief, AIChE - American Institute of Chemical Engineers
Atlanta
Beats
reinsurance technologyfinance blockchain environment
Content
Machine Learning and IAST-Aided High-Throughput Screening of Cationic and Silica Zeolites for Alkane Capture, Storage, and Separations
By Hanjun Fang, Salah Eddine Boulfelfel, Peter Ravikovitch, David S. Sholl Verified| dx.doi.org@ As the demand for clean energy increases, environmentally friendlier methods for separation, capture, and use of hydrocarbons and alkane gases in particular have become important to the petrochemical industry. (1−6) These separations are traditionally carried out using energy-intensive distillation, and adsorption processes in porous materials such as zeolites are attractive as potential alternative methods for separation and purification.
Machine Learning Models for Predicting Molecular Diffusion in Metal-Organic Frameworks Accounting for the Impact of Framework Flexibility
By Yuhan Yang, Zhenzi Yu, David S. Sholl Verified, Shuvo Jit| ACS Publications@ Compared with the traditional heat-driven separation technologies like distillation, evaporation, and drying, diffusion-based separations have the potential to be more energy efficient and therefore lower emissions and pollution. (1−4) In this approach, mixtures of molecules are separated by porous materials based on their geometric or chemical properties in a diffusion process. Finding materials that have the “right” pores is critical for diffusion-based separation to succeed.
Machine Learning and IAST-Aided High-Throughput Screening of Cationic and Silica Zeolites for Alkane Capture, Storage, and Separations
By Hanjun Fang, Salah Eddine Boulfelfel, Peter Ravikovitch, David S. Sholl Verified| dx.doi.org@ As the demand for clean energy increases, environmentally friendlier methods for separation, capture, and use of hydrocarbons and alkane gases in particular have become important to the petrochemical industry. (1−6) These separations are traditionally carried out using energy-intensive distillation, and adsorption processes in porous materials such as zeolites are attractive as potential alternative methods for separation and purification.